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Underlying Physics of Conductive Polymer Composites and Force Sensing Resistors (FSRs) under Static Loading Conditions., , , and . Sensors, 17 (9): 2108 (2017)A Novel and Inexpensive Approach for Force Sensing Based on FSR Piezocapacitance Aimed at Hysteresis Error Reduction., , , , and . J. Sensors, (2018)Force Sensing Resistor data for enhancing part-to-part repeatability using a Six Sigma approach., , , , and . (February 2022)Enhancing the Repeatability of Pressure-Mapping Insoles by Choosing an Appropriate Driving Circuit and Sourcing Voltage., , , , and . BioRob, page 1193-1198. IEEE, (2018)Characterization of drift and hysteresis errors in force sensing resistors considering their piezocapacitive effect., , , and . IEEE SENSORS, page 1-3. IEEE, (2017)Fleets of robots for precision agriculture: a simulation environment., , , , and . Ind. Robot, 40 (1): 41-58 (2013)Detailed Study of Amplitude Nonlinearity in Piezoresistive Force Sensors., , , and . Sensors, 11 (9): 8836-8854 (2011)Accurate modeling of low-cost piezoresistive force sensors for haptic interfaces., , , , and . ICRA, page 1828-1833. IEEE, (2010)Comprehensible Model of Amplitude Nonlinearities in Piezoresistive-force Sensors., and . ICINCO (1), page 405-410. SciTePress, (2011)A Finite Element Analysis Approach to Explain Sensitivity Degradation in Force Sensing Resistors Based on Conductive Polymer Composites., , , and . J. Sensors, (2022)